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Reducing lack of fusion during selective laser melting of CoCrMo alloy: Effect of laser power on geometrical features of tracks

机译:减少CoCrMo合金选择性激光熔化过程中的熔合不足:激光功率对轨道几何特征的影响

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There is a need to understand how selective laser melting (SLM) parameters affect the size and shape of tracks which are the predominant factor relating to the amount of lack of fusion (LOF) formed during SLM. This study is needed as severe LOF impacts quality. In this work on CoCrMo alloy SLM, experiments and analysis have been conducted to reveal how laser power (P) and thus energy, as other parameters are kept unchanged, affect the geometrical features of SLM tracks and the formation of LOF. It has been found that the track was insufficient to overlap and prevent LOF when the recommended condition (P = 180W) was used. Increasing P increases the size and improves the shape stability of the tracks. It will be shown that there is a rapid decay in the amount of LOF as P increases from 180W to 220 W, as the result of the geometrical effect of the track size on overlapping coverage. However, residual LOF has remained even when P has increased to >300W. Evidence of large size spatters causing this and of the high laser beam penetrating capability to reduce the spatter effect is presented and discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:有必要了解选择性激光熔化(SLM)参数如何影响磁道的尺寸和形状,磁道的尺寸和形状是与SLM形成的缺乏融​​合(LOF)量有关的主要因素。由于严重的LOF影响质量,因此需要进行此研究。在有关CoCrMo合金SLM的这项工作中,进行了实验和分析,以揭示在保持其他参数不变的情况下,激光功率(P)和能量如何影响SLM轨迹的几何特征和LOF的形成。当使用推荐条件(P = 180W)时,发现轨道不足以重叠并防止LOF。 P的增加会增加尺寸并改善轨道的形状稳定性。将显示出,由于轨道尺寸对重叠覆盖范围的几何影响,随着P从180W增加到220 W,LOF量会快速衰减。但是,即使P增加到> 300W,仍会残留LOF。提出并讨论了导致这种情况的大尺寸飞溅的证据以及降低飞溅效果的高激光束穿透能力的证据。 (C)2016 Elsevier Ltd.保留所有权利。

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